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Effect of asymmetric terminal structures of short RNA duplexes on the RNA interference activity and strand selection.

机译:短RNA双链体的不对称末端结构对RNA干扰活性和链选择的影响。

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Short interfering RNAs (siRNAs) are valuable reagents for sequence-specific inhibition of gene expression via the RNA interference (RNAi) pathway. Although it has been proposed that the relative thermodynamic stability at the 5'-ends of siRNAs plays a crucial role in siRNA strand selection, we demonstrate here that a character of the 2-nt 3'-overhang of siRNAs is the predominant determinant of which strand participates in the RNAi pathway. We show that siRNAs with a unilateral 2-nt 3'-overhang on the antisense strand are more effective than siRNAs with 3'-overhangs at both ends, due to preferential loading of the antisense strand into the RNA-induced silencing complex (RISC). Regardless of the relative thermodynamic stabilities at the ends of siRNAs, overhang-containing strands are predominantly selected as the guide strand; whereas, relative stability markedly influences opposite strand selection. Moreover, we show that sense strand modifications, such as deletions or DNA substitutions, of siRNAs with unilateral overhang on the antisense strand have no negative effect on the antisense strand selection, but may improve RNAi potency. Our findings provide useful guidelines for the design of potent siRNAs and contribute to understanding the crucial factors in determining strand selection in mammalian cells.
机译:短干扰RNA(siRNA)是用于通过RNA干扰(RNAi)途径对基因表达进行序列特异性抑制的有价值的试剂。尽管有人提出在siRNA的5'端相对热力学稳定性在siRNA链选择中起着至关重要的作用,但我们在这里证明了siRNA的2 -nt 3'突出端的特征是其主要决定因素。链参与RNAi途径。我们显示,反义链上具有单侧2-nt 3'-突出端的siRNA比两端均具有3'-突出端的siRNA更有效,这是由于反义链优先加载到RNA诱导的沉默复合体(RISC)中。不管siRNA末端的相对热力学稳定性如何,都主要选择含有突出端的链作为引导链。相反,相对稳定性显着影响相反链的选择。而且,我们显示了在反义链上具有单侧突出端的siRNA的有义链修饰,例如缺失或DNA取代,对反义链选择没有负面影响,但可以提高RNAi效能。我们的发现为有效的siRNA设计提供了有用的指导,并有助于理解决定哺乳动物细胞链选择的关键因素。

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